The early stages of a high energy heavy ion collision
arXiv:1110.1544 · doi:10.1088/1742-6596/381/1/012021
Abstract
At high energy, the gluon distribution in nuclei reaches large densities and eventually saturates due to recombinations, that play an important role in heavy ion collisions at RHIC and the LHC. The Color Glass Condensate provides a framework for resumming these effects in the calculation of observables. In this talk, I present its application to the description of the early stages of heavy ion collisions.
8 pages, 14 figures, proceedings of the Rutherford Centennial Conference on Nuclear Physics, August 2011, Manchester, UK
References in corpus (12)
- The Color Glass Condensate
- Combined Measurement and QCD Analysis of the Inclusive ep Scattering Cross Sections at HERA
- Some Features of the Glasma
- Long range rapidity correlations and jet production in high energy nuclear collisions
- The ridge in proton-proton collisions at the LHC
- Long range two-particle rapidity correlations in A+A collisions from high energy QCD evolution
- High energy factorization in nucleus-nucleus collisions
- On the Origin of the "Ridge" phenomenon induced by Jets in Heavy Ion Collisions
- High energy factorization in nucleus-nucleus collisions II - Multigluon correlations
- Role of quantum fluctuations in a system with strong fields: Onset of hydrodynamical flow
- High energy factorization in nucleus-nucleus collisions III. Long range rapidity correlations
- Chaotic behavior in classical Yang-Mills dynamics
Cited by in corpus (8)
- Gauss-Bonnet correction to Holographic thermalization: two-point functions, circular Wilson loops and entanglement entropy
- Holographic Thermalization in Charged Dilaton Anti-de Sitter Spacetime
- Glasma Evolution and Bose-Einstein Condensation with Elastic and Inelastic Collisions
- Linear growth of entanglement entropy in holographic thermalization captured by horizon interiors and mutual information
- Holographic thermalization in Gauss-Bonnet gravity with de Sitter boundary
- Kinetic evolution of the glasma and thermalization in heavy ion collisions
- Subregion complexity in holographic thermalization with dS boundary
- Holographic Mutual and Tripartite Information in a Symmetry Breaking Quench